The resolved chemical abundance properties within the interstellar medium of star-forming galaxies at
arXiv:2202.12304 · doi:10.1093/mnras/stac580
Abstract
We exploit the unprecedented depth of integral field data from the KMOS Ultra-deep Rotational Velocity Survey (KURVS) to analyse the strong (H) and forbidden ([NII], [SII]) emission line ratios in 22 main-sequence galaxies at . Using the [NII]/H emission-line ratio we confirm the presence of the stellar mass gas-phase metallicity relation at this epoch, with galaxies exhibiting on average 0.130.04 dex lower gas-phase metallicity (12+log(O/H)=8.400.03) for a given stellar mass (([]=10.10.1) than local main-sequence galaxies. We determine the galaxy-integrated [SII] doublet ratio, with a median value of [SII]6716/6731=1.260.14 equivalent to an electron density of log([cm])=1.950.12. Utilising CANDELS multi-band imaging we define the pixel surface-mass and star-formation rate density in each galaxy and spatially resolve the fundamental metallicity relation at , finding an evolution of 0.050.01 dex compared to the local relation. We quantify the intrinsic gas-phase metallicity gradient within the galaxies using the [NII]/H calibration, finding a median annuli-based gradient of Z/R=0.0150.005 dex kpc. Finally we examine the azimuthal variations in gas-phase metallicity, which show a negative correlation with the galaxy integrated star-formation rate surface density (=0.40, =0.07) but no connection to the galaxies kinematic or morphological properties nor radial variations in stellar mass surface density or star formation rate surface density. This suggests both the radial and azimuthal variations in interstellar medium properties are connected to the galaxy integrated density of recent star formation.
Submitted for publication in MNRAS. Comments welcome. 18 pages
References in corpus (42)
- 3D-HST+CANDELS: The Evolution of the Galaxy Size-Mass Distribution since
- A simple model to interpret the ultraviolet, optical and infrared emission from galaxies
- The Herschel view of the dominant mode of galaxy growth from z=4 to the present day
- Strong Nebular Line Ratios in the Spectra of z~2-3 Star-forming Galaxies: First Results from KBSS-MOSFIRE
- The KMOS^3D Survey: design, first results, and the evolution of galaxy kinematics from 0.7<z<2.7
- The Chandra Deep Field-South Survey: 7 Ms Source Catalogs
- Understanding Galaxy Evolution through Emission Lines
- The Evolution of Galaxy Structure over Cosmic Time
- An ALMA survey of Sub-millimeter Galaxies in the Extended Chandra Deep Field South: Physical properties derived from ultraviolet-to-radio modelling
- The Mass-Metallicity and the Fundamental Metallicity Relation revisited on a fully Te-based abundance scale for galaxies
- Nebular Emission Line Ratios in z~2-3 Star-Forming Galaxies with KBSS-MOSFIRE: Exploring the Impact of Ionization, Excitation, and Nitrogen-to-Oxygen Ratio
- New insights into the stellar content and physical conditions of star-forming galaxies at z = 2-3 from spectral modelling
- The KMOS^3D Survey: data release and final survey paper
- Modelling the Pan-Spectral Energy Distribution of Starburst Galaxies: II. Control of the \HII Region Parameters
- Do galaxy global relationships emerge from local ones? The SDSS IV MaNGA surface mass density-metallicity relation
- The KMOS Redshift One Spectroscopic Survey (KROSS): the origin of disk turbulence in z~0.9 star-forming galaxies
- The MUSE Atlas of Disks (MAD): Resolving Star Formation Rates and Gas Metallicities on < 100pc Scales
- The KMOS Redshift One Spectroscopic Survey (KROSS): rotational velocities and angular momentum of z~0.9 galaxies
- The KLEVER Survey: Spatially resolved metallicity maps and gradients in a sample of 1.2 < z < 2.5 lensed galaxies
- The COSMOS [OII] Survey: Evolution of Electron Density with Star Formation Rate
- SDSS-IV MaNGA: What Shapes The Distribution Of Metals In Galaxies? Exploring The Roles Of The Local Gas Fraction And Escape Velocity
- The physics of gas phase metallicity gradients in galaxies
- From 'bathtub' galaxy evolution models to metallicity gradients
- The Grism Lens-Amplified Survey from Space (GLASS). II. Gas-phase metallicity and radial gradients in an interacting system at z~2
- The mass-metallicity relations for gas and stars in star-forming galaxies: strong outflow vs variable IMF
- Low-redshift compact star-forming galaxies as analogues of high-redshift star-forming galaxies
- Resolved galaxy scaling relations in the EAGLE simulation: star formation, metallicity and stellar mass on kpc scales
- The KMOS Survey: Investigating the Origin of the Elevated Electron Densities in Star-Forming Galaxies at
- The mass-metallicity relation at z~1-2 and its dependence on star formation rate
- Spectro-photometric decomposition of galaxy structural components
- SDSS-IV MaNGA: drivers of stellar metallicity in nearby galaxies
- The BPT Diagram in Cosmological Galaxy Formation Simulations: Understanding the Physics Driving Offsets at High-Redshift
- The KMOS Galaxy Evolution Survey (KGES): the angular momentum of star-forming galaxies over the last ~10 Gyr
- A geostatistical analysis of multiscale metallicity variations in galaxies [I]: Introduction and comparison of high-resolution metallicity maps to an analytic metal transport model
- What Drives the Redshift Evolution of Strong Emission Line Ratios?
- The Dynamics and Distribution of Angular Momentum in HiZELS Star-Forming Galaxies at z = 0.8 - 3.3
- From Peculiar Morphologies to Hubble-type Spirals: The relation between galaxy dynamics and morphology in star-forming galaxies at z~1.5
- SDSS-IV MaNGA: galaxy gas-phase metallicity gradients vary across the mass-size plane
- Hardness of ionizing radiation fields in MaNGA star-forming galaxies
- Conversions between gas-phase metallicities in MaNGA
- AGN and Star-Formation Properties of Inside-out Assembled Galaxy Candidates at z<0.1
- Formation of disc galaxies around z~2